ADAMTSL3 knock-out mice develop cardiac dysfunction and dilatation with increased TGFβ signalling after pressure overload

被引:0
|
作者
Karoline B. Rypdal
A. Olav Melleby
Emma L. Robinson
Jia Li
Sheryl Palmero
Deborah E. Seifert
Daniel Martin
Catelyn Clark
Begoña López
Kristine Andreassen
Christen P. Dahl
Ivar Sjaastad
Theis Tønnessen
Mathis K. Stokke
William E. Louch
Arantxa González
Stephane Heymans
Geir Christensen
Suneel S. Apte
Ida G. Lunde
机构
[1] Oslo University Hospital and University of Oslo,Institute for Experimental Medical Research
[2] Akershus University Hospital,Division of Diagnostics and Technology
[3] University of Oslo,K.G. Jebsen Center for Cardiac Biomarkers
[4] University of Oslo,Department of Molecular Medicine, Institute of Basic Medical Sciences
[5] Maastricht University,Department of Cardiology
[6] CARIM School for Cardiovascular Diseases,Department of Biomedical Engineering
[7] Cleveland Clinic Lerner Research Institute,Program of Cardiovascular Diseases
[8] CIMA Universidad de Navarra and IdiSNA,Department of Cardiology
[9] CIBERCV,Department of Cardiothoracic Surgery
[10] Carlos III Institute of Health,undefined
[11] Oslo University Hospital Rikshospitalet,undefined
[12] Oslo University Hospital Ullevål,undefined
[13] Centre for Molecular and Vascular Biology,undefined
[14] Department of Cardiovascular Sciences,undefined
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Heart failure is a major cause of morbidity and mortality worldwide, and can result from pressure overload, where cardiac remodelling is characterized by cardiomyocyte hypertrophy and death, fibrosis, and inflammation. In failing hearts, transforming growth factor (TGF)β drives cardiac fibroblast (CFB) to myofibroblast differentiation causing excessive extracellular matrix production and cardiac remodelling. New strategies to target pathological TGFβ signalling in heart failure are needed. Here we show that the secreted glycoprotein ADAMTSL3 regulates TGFβ in the heart. We found that Adamtsl3 knock-out mice develop exacerbated cardiac dysfunction and dilatation with increased mortality, and hearts show increased TGFβ activity and CFB activation after pressure overload by aortic banding. Further, ADAMTSL3 overexpression in cultured CFBs inhibits TGFβ signalling, myofibroblast differentiation and collagen synthesis, suggesting a cardioprotective role for ADAMTSL3 by regulating TGFβ activity and CFB phenotype. These results warrant future investigation of the potential beneficial effects of ADAMTSL3 in heart failure.
引用
收藏
相关论文
共 50 条
  • [1] ADAMTSL3 knock-out mice develop cardiac dysfunction and dilatation with increased TGFβ signalling after pressure overload
    Rypdal, Karoline B.
    Melleby, A. Olav
    Robinson, Emma L.
    Li, Jia
    Palmero, Sheryl
    Seifert, Deborah E.
    Martin, Daniel
    Clark, Catelyn
    Lopez, Begona
    Andreassen, Kristine
    Dahl, Christen P.
    Sjaastad, Ivar
    Tonnessen, Theis
    Stokke, Mathis K.
    Louch, William E.
    Gonzalez, Arantxa
    Heymans, Stephane
    Christensen, Geir
    Apte, Suneel S.
    Lunde, Ida G.
    COMMUNICATIONS BIOLOGY, 2022, 5 (01)
  • [2] Comparison of Cardiac Cell Function in Caveolin-3 Knock-Out and TAC Mice
    Kong, Cherrie H.
    Bryant, Simon M.
    Gadeberg, Hanne C.
    Watson, Judy J.
    Roth, David M.
    Patel, Hemal H.
    James, Andrew F.
    Cannell, Mark B.
    Orchard, Clive H.
    BIOPHYSICAL JOURNAL, 2018, 114 (03) : 626A - 626A
  • [3] Decreased cardiac function and increased cardiac lymphangiogenesis in CR6 interacting factor 1 knock-out mice
    Jin, S. A.
    Kim, S. K.
    Seo, H. J.
    Cho, C. H.
    Park, J. H.
    Seong, I. W.
    Jeong, J. O.
    EUROPEAN HEART JOURNAL, 2013, 34 : 1055 - 1056
  • [4] Modulation of doxorubicin-induced cardiac dysfunction in toll-like receptor 2 knock-out mice
    Nozaki, N
    Shishido, T
    Takeishi, Y
    Kubota, I
    CIRCULATION, 2003, 108 (17) : 79 - 79
  • [5] Are HFE gene knock-out mice dying earlier than wild-type mice because of iron overload in heart tissue induce cardiac dysfunction and exercise limitation?
    Vitiello, Damien
    Djemai, Haidar
    Trzaskus, Yvan
    Thomasson, Remi
    Desgorces, Francois
    Toussaint, Jean-Francois
    Noirez, Philippe
    ACTA PHYSIOLOGICA, 2016, 217 : 49 - 49
  • [6] Increased left ventricular dilatation and mortality in biglycane knock out mice after induction of myocardial infarction
    Westermman, D
    Petrik, C
    Schultheiss, HP
    Unger, T
    Tschope, C
    Fischer, J
    HYPERTENSION, 2005, 46 (04) : 895 - 895
  • [7] Mice with a cardiac-specific knock-out of the sodium-calcium exchanger are viable and exhibit moderate levels of cardiac dysfunction
    Jordan, MC
    Henderson, SA
    Frank, JS
    Ross, RS
    Roos, KP
    Philipson, KD
    CIRCULATION, 2003, 108 (17) : 48 - 48
  • [8] Cardiac MRI reveals reduced left ventricular remodeling after myocardial infarction in iNOS knock-out mice
    Gilson, WD
    Epstein, FH
    Yang, ZQ
    Laubach, VE
    Roy, RJ
    Berr, SS
    French, BA
    CIRCULATION, 2003, 108 (17) : 700 - 700
  • [9] Combination of tumor necrosis factor-α ablation and matrix metalloproteinase inhibition prevents heart failure after pressure overload in tissue inhibitor of metalloproteinase-3 knock-out mice
    Kassiri, Z
    Oudit, GY
    Sanchez, O
    Dawood, F
    Mohammed, FF
    Nuttall, RK
    Edwards, DR
    Liu, PP
    Backx, PH
    Khokha, R
    CIRCULATION RESEARCH, 2005, 97 (04) : 380 - 390
  • [10] Targeted Mybpc3 Knock-Out Mice with Cardiac Hypertrophy Exhibit Structural Mitral Valve Abnormalities
    Judge, Daniel P.
    Neamatalla, Hany
    Norris, Russell A.
    Levine, Robert A.
    Butcher, Jonathan T.
    Vignier, Nicolas
    Kang, Kevin H.
    Nguyen, Quangtung
    Bruneval, Patrick
    Perier, Marie-Cecile
    Messas, Emmanuel
    Jeunemaitre, Xavier
    de Vlaming, Annemarieke
    Markwald, Roger
    Carrier, Lucie
    Hagege, Albert A.
    JOURNAL OF CARDIOVASCULAR DEVELOPMENT AND DISEASE, 2015, 2 (02): : 48 - 65